Hydraulic Conductivity of Mine Waste Treated Using Enzyme-Induced Calcite Precipitation Method Under Various Curing Conditions

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY International Journal of Integrated Engineering Pub Date : 2023-07-31 DOI:10.30880/ijie.2023.15.02.012
J. Makinda, K. Kassim, M. A. Hezmi, Nuraishah binti Zakaria
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Abstract

The hydraulic conductivity of mine waste soil is considered moderately high attributed to the high percentage of pore spaces. One of the risks associated with this poor property ispossibleintrusion of contaminated acid drainage into the groundwater or river. Biocementation using enzyme-induced calcite precipitation is a relatively new, more inventive, and environmentally sustainable method compared to the other techniques in improving soil properties. However, limited available data on how this method can be applied in improving heavy-metal contaminated mining wastes. This paper summarizes the effectofthis treatment,includingdifferent cementation concentrations, degree of compaction, curing temperatures and curingdurations in reducing the hydraulic conductivity of mining waste. Results obtained indicate a greater effect of 1.0M compared to 0.5Mconcentration, a degree of compaction of 80% compared to 70%,acuring temperature of 25 °C compared to 15 °C and 5 °C, and immediate reaction effect after 1then slowed down after 3 and 7-day curing. When compared to control samples, the reduction in hydraulic conductivity ranged from75.66to 97.14%. The positive result is attained due to the production of calcite, CaCO3that biocemented the soil particles together and reduced the pore spaces, indicated by their content obtained,ranging from 2.0-5.15% in the treated soil. Visualimages through SEM and spectra of x-ray diffraction confirmed the presence of CaCO3in soil particles. This work contributedsignificantly to the study of the properties of copper mine tailings in Ranau, Sabah, including the first study on biocementation of copper mine tailings. The method couldbe used to reduce the hydraulic conductivity of mining waste soils contaminated with heavy metals. Various scenarios such as curing temperature, duration, cementation concentration and degree of compaction have been proposed to optimize the effectiveness of the treatment.
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不同养护条件下酶诱导方解石沉淀法处理矿山废弃物的导电性
由于孔隙率高,矿用废土的水导率适中。与这一不良属性相关的风险之一是污染的酸性排水可能侵入地下水或河流。与其他改善土壤性质的技术相比,利用酶诱导方解石沉淀进行生物胶结是一种相对较新的、更具创造性的、环境可持续的方法。但是,关于如何将这种方法应用于改善重金属污染的采矿废物的现有数据有限。本文综述了不同胶结浓度、压实程度、养护温度和养护时间对降低矿渣导水性的影响。结果表明,1.0M比0.5 m效果更好,压实度为80%比70%,固化温度为25℃比15℃和5℃,1 d后立即反应效果在3 d和7 d后减慢。与对照样品相比,水导率降低幅度为75.66%至97.14%。由于方解石和caco3的产生,使土壤颗粒生物胶结在一起,减少了孔隙空间,得到的含量表明,在处理过的土壤中,它们的含量在2.0-5.15%之间。通过扫描电镜和x射线衍射光谱的视觉图像证实了土壤颗粒中caco3的存在。这项工作对沙巴Ranau铜矿尾矿的性质研究做出了重大贡献,包括首次对铜矿尾矿的生物胶结进行了研究。该方法可用于降低重金属污染矿山废土的导水率。提出了养护温度、养护时间、胶结浓度和压实程度等多种方案来优化处理效果。
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来源期刊
International Journal of Integrated Engineering
International Journal of Integrated Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
0.00%
发文量
57
期刊介绍: The International Journal of Integrated Engineering (IJIE) is a single blind peer reviewed journal which publishes 3 times a year since 2009. The journal is dedicated to various issues focusing on 3 different fields which are:- Civil and Environmental Engineering. Original contributions for civil and environmental engineering related practices will be publishing under this category and as the nucleus of the journal contents. The journal publishes a wide range of research and application papers which describe laboratory and numerical investigations or report on full scale projects. Electrical and Electronic Engineering. It stands as a international medium for the publication of original papers concerned with the electrical and electronic engineering. The journal aims to present to the international community important results of work in this field, whether in the form of research, development, application or design. Mechanical, Materials and Manufacturing Engineering. It is a platform for the publication and dissemination of original work which contributes to the understanding of the main disciplines underpinning the mechanical, materials and manufacturing engineering. Original contributions giving insight into engineering practices related to mechanical, materials and manufacturing engineering form the core of the journal contents.
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